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3D Spatial Distribution of Reservoir Parameters for Prospect Identification in ''Bizzy'' Field, Niger Delta

机译:尼日尔三角洲“ Bizzy”油田识别前景的储层参数的3D空间分布

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This study focuses on the use of some geostatistical tools to spatially distribute reservoir parameters in order to identify the bypassed prospects from the earlier seismic interpretation that was carried out in the field using 3D seismic data. Four wells and seismic data were used to generate the interpreted input horizon grids, fault polygons and to carry out detailed petrophysical analysis. Structural and property modeling which include; facies, net to gross, porosity and water saturation were distributed stochastically within the constructed 3D grid using Sequential Gaussian Simulation (SGS) algorithm. The reservoir structural model show system of different oriented growth faults F1 to F9. Faults F1, F2, F3 and F4 were the major growth faults, dipping towards south-west and are quite extensive almost across all the seismic section. A rollover anticline formed as a result of deformation of the sediments deposited on the downthrown block of fault F1. The other faults were minor fault (synthetic and antithetic). The trapping mechanism is a fault assisted anticlinal closure. Results from well log analysis and petrophysical models shows Godwin reservoir to be a moderate to good reservoir in terms of facies, with good net to gross, porosity, permeability and low water saturation. This study has also demonstrated the effectiveness of 3D geostatical modeling technique as a tool for better understanding the distribution with respect to space of continuous reservoir properties. It will also provide a framework for the future prediction of reservoir qualities and yield rate of the reservoirs.
机译:这项研究的重点是使用某些地统计学工具在空间上分配储层参数,以便从使用3D地震数据在现场进行的较早地震解释中识别出被绕过的前景。使用四口井和地震数据生成解释的输入层位网格,断层多边形并进行详细的岩石物理分析。结构和特性建模,包括;使用顺序高斯模拟(SGS)算法,在构造的3D网格内随机地分布了净,总,孔隙度和水饱和度等相。储层结构模型显示了不同方向的发育断层F1至F9的系统。断层F1,F2,F3和F4是主要的生长断层,向西南倾斜,几乎遍及整个地震剖面。由于沉积在断层F1的下倾块上的沉积物变形而形成了翻转斜线。其他故障是次要故障(综合性和对立性)。诱捕机制是断层辅助的背斜闭合。测井分析和岩石物理模型的结果表明,就相而言,戈德温储层是中等至良好的储层,具有良好的总储量,孔隙度,渗透率和低水饱和度。这项研究还证明了3D地静力学建模技术作为一种工具,可以更好地了解连续油藏属性空间的分布情况。它还将为将来预测储层质量和储层产率提供一个框架。

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